共 123 条
Endothelial progenitor cells and integrins: adhesive needs
被引:111
作者:

Caiado, Francisco
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h-index: 0
机构:
EPE, Gentil, Inst Portugues Oncol Francisco, CIPM,Angiogenesis Lab, Lisbon, Portugal
Inst Gulbenkian Ciencias, Oeiras, Portugal
CEDOC, Fac Ciencias Med, Lisbon, Portugal EPE, Gentil, Inst Portugues Oncol Francisco, CIPM,Angiogenesis Lab, Lisbon, Portugal

Dias, SERgio
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h-index: 0
机构:
EPE, Gentil, Inst Portugues Oncol Francisco, CIPM,Angiogenesis Lab, Lisbon, Portugal
Inst Gulbenkian Ciencias, Oeiras, Portugal
CEDOC, Fac Ciencias Med, Lisbon, Portugal EPE, Gentil, Inst Portugues Oncol Francisco, CIPM,Angiogenesis Lab, Lisbon, Portugal
机构:
[1] EPE, Gentil, Inst Portugues Oncol Francisco, CIPM,Angiogenesis Lab, Lisbon, Portugal
[2] Inst Gulbenkian Ciencias, Oeiras, Portugal
[3] CEDOC, Fac Ciencias Med, Lisbon, Portugal
关键词:
D O I:
10.1186/1755-1536-5-4
中图分类号:
Q2 [细胞生物学];
学科分类号:
071009 [细胞生物学];
090102 [作物遗传育种];
摘要:
In the last decade there have been multiple studies concerning the contribution of endothelial progenitor cells (EPCs) to new vessel formation in different physiological and pathological settings. The process by which EPCs contribute to new vessel formation in adults is termed postnatal vasculogenesis and occurs via four inter-related steps. They must respond to chemoattractant signals and mobilize from the bone marrow to the peripheral blood; home in on sites of new vessel formation; invade and migrate at the same sites; and differentiate into mature endothelial cells (ECs) and/or regulate pre-existing ECs via paracrine or juxtacrine signals. During these four steps, EPCs interact with different physiological compartments, namely bone marrow, peripheral blood, blood vessels and homing tissues. The success of each step depends on the ability of EPCs to interact, adapt and respond to multiple molecular cues. The present review summarizes the interactions between integrins expressed by EPCs and their ligands: extracellular matrix components and cell surface proteins present at sites of postnatal vasculogenesis. The data summarized here indicate that integrins represent a major molecular determinant of EPC function, with different integrin subunits regulating different steps of EPC biology. Specifically, integrin alpha 4 beta 1 is a key regulator of EPC retention and/or mobilization from the bone marrow, while integrins alpha 5 beta 1, alpha 6 beta 1, alpha v beta 3 and alpha v beta 5 are major determinants of EPC homing, invasion, differentiation and paracrine factor production. beta 2 integrins are the major regulators of EPC transendothelial migration. The relevance of integrins in EPC biology is also demonstrated by many studies that use extracellular matrix-based scaffolds as a clinical tool to improve the vasculogenic functions of EPCs. We propose that targeted and tissue-specific manipulation of EPC integrin-mediated interactions may be crucial to further improve the usage of this cell population as a relevant clinical agent.
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